Microchip Technology_SY100EP210UTI

Microchip Technology
SY100EP210UTI  
Clock Buffers, Drivers ICs

SY100EP210UTI
764-SY100EP210UTI
IC CLK BUFFER 1:5 3GHZ 32TQFP
In Stock : 7003

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SY100EP210UTI Description

SY100EP210UTI Description

The SY100EP210UTI is a high-performance fanout buffer (distribution) IC designed for precision clock distribution applications. Manufactured by Microchip Technology, this device is part of the 100EP, Precision Edge® series and is known for its robust performance and reliability. The SY100EP210UTI features a 1:5 input-to-output ratio, supporting differential signaling on both the input and output sides, which ensures high signal integrity and minimal skew. It is designed for surface mount applications and is available in bulk packaging.

SY100EP210UTI Features

  • Differential Signaling: The SY100EP210UTI supports differential signaling on both the input and output, which enhances signal integrity and reduces electromagnetic interference (EMI). This feature is crucial for high-speed applications where signal quality is paramount.
  • Wide Input Compatibility: The device accepts a variety of input signal types, including HSTL, LVECL, and LVPECL, making it versatile for different system architectures.
  • High-Speed Performance: With a maximum frequency of 3 GHz, the SY100EP210UTI is capable of handling high-speed clock signals, ensuring precise timing and synchronization in complex electronic systems.
  • Supply Voltage Range: The SY100EP210UTI operates within a supply voltage range of 2.375V to 3.8V, providing flexibility in power supply design.
  • Moisture Sensitivity Level: The device has a moisture sensitivity level (MSL) of 3 (168 hours), which ensures reliability in various environmental conditions.
  • Compliance and Standards: The SY100EP210UTI is classified under ECCN EAR99 and is REACH unaffected, ensuring compliance with international regulations and standards.

SY100EP210UTI Applications

The SY100EP210UTI is ideal for applications requiring high-speed clock distribution and precise timing. Some specific use cases include:

  • Telecommunications: In high-speed communication systems, the SY100EP210UTI can distribute clock signals to multiple components with minimal jitter, ensuring reliable data transmission.
  • Data Centers: For server and storage systems, the device can provide consistent clock signals to various modules, enhancing overall system performance.
  • High-Performance Computing: In supercomputers and advanced processing units, the SY100EP210UTI ensures that clock signals are distributed accurately, maintaining synchronization across multiple processing cores.
  • Industrial Automation: The robustness and reliability of the SY100EP210UTI make it suitable for industrial control systems where precise timing is critical for process control and automation.

Conclusion of SY100EP210UTI

The SY100EP210UTI is a high-performance fanout buffer designed for precision clock distribution. Its differential signaling capabilities, wide input compatibility, and high-speed performance make it an ideal choice for demanding applications in telecommunications, data centers, high-performance computing, and industrial automation. While the product is now obsolete, its legacy remains in the reliable and efficient clock distribution it provided during its production. For current and future projects, engineers and designers may need to seek alternative solutions that offer similar or enhanced capabilities.

Tech Specifications

Operating Temperature
ECCN
Ratio - Input:Output
Differential - Input:Output
Mounting Type
Product Status
Supplier Device Package
Series
Type
Input
Package / Case
Voltage - Supply
Output
REACH Status
Mfr
HTSUS
Package
Number of Circuits
Frequency - Max
RoHS Status
Base Product Number
Moisture Sensitivity Level (MSL)

SY100EP210UTI Documents

Download datasheets and manufacturer documentation for SY100EP210UTI

Ersa MBB/Label Chgs 16/Nov/2018      
Ersa SY100EP210 Development Tool Selector      
Ersa Microchip CA Prop65       Microchip RoHS       Microchip REACH      

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